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MOSFET Model HiSIM Based on Surface-Potential Description for Enabling Accurate RF-CMOS Design
Miura-Mattausch, M.,Mattausch, H.J.,Ohguro, T.,Iizuka, T.,Taguchi, M.,Kumashiro, S.,Miyamoto, S. The Institute of Electronics and Information Engin 2004 Journal of semiconductor technology and science Vol.4 No.3
The origin of the phenomena, obstructing circuit performance in the RF operating regime, as well as their modeling will be discussed. The applied surface-potential-based modeling allows self-consistent description of all phenomena important for accurate circuit simulation, as demonstrated with the MOSFET model HiSIM.
MOSFET Model HiSIM Based on Surface-Potential Description for Enabling Accurate RF-CMOS Design
M. Miura-Mattausch,H. J. Mattausch,T. Ohguro,T. Iizuka,M. Taguchi,S. Kumashiro,S. Miyamoto 대한전자공학회 2004 Journal of semiconductor technology and science Vol.4 No.3
The origin of the phenomena, obstructing circuit performance in the RF operating regime, as well as their modeling will be discussed. The applied surface-potential-based modeling allows self-consistent description of all phenomena important for accurate circuit simulation, as demonstrated with the MOSFET model HiSIM.<br/>
Qualitative changes in fetal trabecular meshwork fibers at the human iridocorneal angle
Fumio Hosaka,Jose Francisco Rodríguez-Vázquez,Hiroshi Abe,Gen Murakami,Mineko Fujimiya,Hiroshi Ohguro 대한해부학회 2013 Anatomy & Cell Biology Vol.46 No.1
We examined a series of changes that occur in the trabecular meshwork fibers of human eyes during fetal development at 12-30 weeks of gestation. At 12 and 15 weeks, the uveal meshwork was stained black with silver impregnation (indicating the predominance of collagen types III and IV) in the endomysium of the ciliary muscle. At 20 weeks, in combination with Schlemm’s canal, a dense fibrous tissue mass corresponding to the trabecular meshwork anlage appeared and was colored black. The anlage was continuous with the corneal endothelium rather than with the ciliary muscle. Until 25 weeks, the trabecular meshwork was identifiable as fragmented fiber bundles that stained red-black, suggesting a mixture of collagen types I, III, and IV. At 30 weeks, half of the ciliary muscle fibers were inserted into the scleral spur and not into the meshwork. Therefore, any contribution of ciliary muscle contraction to the differentiation of the trabecular meshwork would appear to be limited. We hypothesize that an uneven distribution of mechanical stresses in the area of the cornea-sclera junction causes a tear thereby creating Schlemm’s canal and is accompanied by a change in the collagen fiber types comprising the meshwork.